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The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection

Many plant species produce multiple leaf flushes during the growing season, which might have major consequences for within‐plant variation in chemistry and species interactions. Yet, we lack a theoretical or empirical framework for how differences among leaf flushes might shape variation in damage b...

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Autores principales: Gaytán, Álvaro, Moreira, Xoaquín, Castagneyrol, Bastien, Van Halder, Inge, De Frenne, Pieter, Meeussen, Camille, Timmermans, Bart G. H., Ten Hoopen, Jan P. J. G., Rasmussen, Pil U., Bos, Nick, Jaatinen, Raimo, Pulkkinen, Pertti, Söderlund, Sara, Covelo, Felisa, Gotthard, Karl, Tack, Ayco J. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545873/
https://www.ncbi.nlm.nih.gov/pubmed/35514157
http://dx.doi.org/10.1111/nph.18209
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author Gaytán, Álvaro
Moreira, Xoaquín
Castagneyrol, Bastien
Van Halder, Inge
De Frenne, Pieter
Meeussen, Camille
Timmermans, Bart G. H.
Ten Hoopen, Jan P. J. G.
Rasmussen, Pil U.
Bos, Nick
Jaatinen, Raimo
Pulkkinen, Pertti
Söderlund, Sara
Covelo, Felisa
Gotthard, Karl
Tack, Ayco J. M.
author_facet Gaytán, Álvaro
Moreira, Xoaquín
Castagneyrol, Bastien
Van Halder, Inge
De Frenne, Pieter
Meeussen, Camille
Timmermans, Bart G. H.
Ten Hoopen, Jan P. J. G.
Rasmussen, Pil U.
Bos, Nick
Jaatinen, Raimo
Pulkkinen, Pertti
Söderlund, Sara
Covelo, Felisa
Gotthard, Karl
Tack, Ayco J. M.
author_sort Gaytán, Álvaro
collection PubMed
description Many plant species produce multiple leaf flushes during the growing season, which might have major consequences for within‐plant variation in chemistry and species interactions. Yet, we lack a theoretical or empirical framework for how differences among leaf flushes might shape variation in damage by insects and diseases. We assessed the impact of leaf flush identity on leaf chemistry, insect attack and pathogen infection on the pedunculate oak Quercus robur by sampling leaves from each leaf flush in 20 populations across seven European countries during an entire growing season. The first leaf flush had higher levels of primary compounds, and lower levels of secondary compounds, than the second flush, whereas plant chemistry was highly variable in the third flush. Insect attack decreased from the first to the third flush, whereas infection by oak powdery mildew was lowest on leaves from the first flush. The relationship between plant chemistry, insect attack and pathogen infection varied strongly among leaf flushes and seasons. Our findings demonstrate the importance of considering differences among leaf flushes for our understanding of within‐tree variation in chemistry, insect attack and disease levels, something particularly relevant given the expected increase in the number of leaf flushes with climate change.
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spelling pubmed-95458732022-10-14 The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection Gaytán, Álvaro Moreira, Xoaquín Castagneyrol, Bastien Van Halder, Inge De Frenne, Pieter Meeussen, Camille Timmermans, Bart G. H. Ten Hoopen, Jan P. J. G. Rasmussen, Pil U. Bos, Nick Jaatinen, Raimo Pulkkinen, Pertti Söderlund, Sara Covelo, Felisa Gotthard, Karl Tack, Ayco J. M. New Phytol Research Many plant species produce multiple leaf flushes during the growing season, which might have major consequences for within‐plant variation in chemistry and species interactions. Yet, we lack a theoretical or empirical framework for how differences among leaf flushes might shape variation in damage by insects and diseases. We assessed the impact of leaf flush identity on leaf chemistry, insect attack and pathogen infection on the pedunculate oak Quercus robur by sampling leaves from each leaf flush in 20 populations across seven European countries during an entire growing season. The first leaf flush had higher levels of primary compounds, and lower levels of secondary compounds, than the second flush, whereas plant chemistry was highly variable in the third flush. Insect attack decreased from the first to the third flush, whereas infection by oak powdery mildew was lowest on leaves from the first flush. The relationship between plant chemistry, insect attack and pathogen infection varied strongly among leaf flushes and seasons. Our findings demonstrate the importance of considering differences among leaf flushes for our understanding of within‐tree variation in chemistry, insect attack and disease levels, something particularly relevant given the expected increase in the number of leaf flushes with climate change. John Wiley and Sons Inc. 2022-05-26 2022-08 /pmc/articles/PMC9545873/ /pubmed/35514157 http://dx.doi.org/10.1111/nph.18209 Text en © 2022 The Authors. New Phytologist © 2022 New Phytologist Foundation https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Gaytán, Álvaro
Moreira, Xoaquín
Castagneyrol, Bastien
Van Halder, Inge
De Frenne, Pieter
Meeussen, Camille
Timmermans, Bart G. H.
Ten Hoopen, Jan P. J. G.
Rasmussen, Pil U.
Bos, Nick
Jaatinen, Raimo
Pulkkinen, Pertti
Söderlund, Sara
Covelo, Felisa
Gotthard, Karl
Tack, Ayco J. M.
The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title_full The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title_fullStr The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title_full_unstemmed The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title_short The co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
title_sort co‐existence of multiple oak leaf flushes contributes to the large within‐tree variation in chemistry, insect attack and pathogen infection
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545873/
https://www.ncbi.nlm.nih.gov/pubmed/35514157
http://dx.doi.org/10.1111/nph.18209
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